Aerosol characteristics inversion based on the improved lidar ratio profile with the ground-based rotational Raman–Mie lidar

Hongzhu Ji, Yinchao Zhang*, Siying Chen, He Chen, Pan Guo

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

15 Citations (Scopus)

Abstract

An iterative method, based on a derived inverse relationship between atmospheric backscatter coefficient and aerosol lidar ratio, is proposed to invert the lidar ratio profile and aerosol extinction coefficient. The feasibility of this method is investigated theoretically and experimentally. Simulation results show the inversion accuracy of aerosol optical properties for iterative method can be improved in the near-surface aerosol layer and the optical thick layer. Experimentally, as a result of the reduced insufficiency error and incoherence error, the aerosol optical properties with higher accuracy can be obtained in the near-surface region and the region of numerical derivative distortion. In addition, the particle component can be distinguished roughly based on this improved lidar ratio profile.

Original languageEnglish
Pages (from-to)54-60
Number of pages7
JournalOptics Communications
Volume416
DOIs
Publication statusPublished - 1 Jun 2018

Keywords

  • Aerosol
  • Improved lidar ratio profile
  • Inversion accuracy
  • Iterative method
  • Lidar

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